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An original growth mode of MWCNTs on alumina supported iron catalysts

机译:氧化铝负载的铁催化剂上多壁碳纳米管的原始生长模式

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Multi-walled carbon nanotubes (MWCNTs) have been produced from ethylene by fluidized bed-catalytic chemical vapor deposition (FB-CCVD) on alumina supported iron catalyst powders. Both catalysts and MWCNTs-catalyst composites have been characterized by XRD, SEM-EDX, TEM, M?ssbauer spectroscopy, TGA and nitrogen adsorption measurements at different stages of the process. The fresh catalyst is an alumina/iron oxide powder composed of amorphous iron(III) oxide nanoparticles located inside the porosity of the alumina support and of a micrometric crystalline α-iron(III) oxide surface film. The beginning of the CVD process provokes a brutal reconstruction and simultaneous carburization of the surface film that allows MWCNT nucleation and growth. These MWCNTs grow aligned between the support and the surface catalytic film, leading to a uniform consumption and uprising of the film. When the catalytic film has been consumed, the catalytic particles located inside the alumina porosity are slowly reduced and activated leading to a secondary MWCNT growth regime, which produces a generalized grain fragmentation and entangled MWCNT growth. Based on experimental observations and characterizations, this original two-stage growth mode is discussed and a general growth mechanism is proposed.
机译:通过在氧化铝负载的铁催化剂粉末上进行流化床催化化学气相沉积(FB-CCVD),由乙烯生产了多壁碳纳米管(MWCNT)。催化剂和MWCNTs-催化剂复合物均已通过XRD,SEM-EDX,TEM,Msssbauer光谱,TGA和氮吸附测量在工艺的不同阶段进行了表征。新鲜催化剂是氧化铝/氧化铁粉末,其由位于氧化铝载体孔隙内部的无定形氧化铁(III)纳米颗粒和微米级结晶α-氧化铁(III)表面膜组成。 CVD工艺的开始引发了残酷的重建,同时对表面膜进行了渗碳处理,从而使MWCNT成核和生长。这些MWCNT在载体和表面催化膜之间成一直线生长,导致膜的均匀消耗和起义。当催化膜被消耗掉时,位于氧化铝孔隙内部的催化颗粒会被缓慢还原和活化,从而导致次级MWCNT的生长过程,从而产生普遍的晶粒破碎和MWCNT纠缠的生长。基于实验观察和表征,讨论了原始的两阶段生长模式,并提出了一般的生长机理。

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